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A Portable VM-based implementation Platform for non-strict Functional Programming Languages.

, and . IFL, page 4:1-4:14. ACM, (2016)

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Benchmarking Implementations of Functional Languages with `Pseudoknot', a Float-Intensive Benchmark., , , , , , , , , and 17 other author(s). J. Funct. Program., 6 (4): 621-655 (1996)Fusion in Practice., , and . IFL, volume 2670 of Lecture Notes in Computer Science, page 51-67. Springer, (2002)Exchanging sources between clean and Haskell: a double-edged front end for the clean compiler., , , , and . Haskell, page 49-60. ACM, (2010)Optimising Recursive Functions Yielding Multiple Results in Tuples in a Lazy Functional Language.. IFL, volume 1868 of Lecture Notes in Computer Science, page 59-76. Springer, (1999)High Level Specification of I/O in Functional Languages., , and . Functional Programming, page 1-17. Springer, (1992)The Implementation and Efficiency of Arrays in Clean 1.1.. Implementation of Functional Languages, volume 1268 of Lecture Notes in Computer Science, page 105-124. Springer, (1996)Generating Efficient Code for Lazy Functional Languages., , , and . FPCA, volume 523 of Lecture Notes in Computer Science, page 592-617. Springer, (1991)iTasks for a change: type-safe run-time change in dynamically evolving workflows., , , , , and . PEPM, page 151-160. ACM, (2011)Optimizing Mark-Scan Garbage Collection.. Journal of Functional and Logic Programming, (1995)A Portable VM-based implementation Platform for non-strict Functional Programming Languages., and . IFL, page 4:1-4:14. ACM, (2016)